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Broadband analysis techniques for Herschel/HIFI spectral surveys of chemically rich star-forming regions

机译:用于化学丰富的恒星形成区的Herschel / HIFI光谱调查的宽带分析技术

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摘要

The Heterodyne Instrument for the Far Infrared(HIFI)aboard the Herschel Space Observatory has acquired high-resolution broadband molecular spectra of star-forming regions in a wavelength range that is mostly inaccessible from ground-based astronomical observatories. These spectral surveys provide new insight into the chemical composition and physical properties of molecular clouds. In this manuscript, we present initial results from the HIFI spectral survey of the Sagittarius B2(N)molecular cloud, which contains spectral features assigned to at least 40 different molecules in a range of physical environments. While extensive line blending is observed due to the chemical complexity of this region, reliable molecular line identifications can be made, down to the noise floor, due to the large number of transitions detected for each species in the _1.2 THz survey bandwidth. This allows for the extraction of new weakly emitting species from the line forest. These HIFI surveys will be an invaluable archival resource for future investigations into interstellar chemistry.
机译:赫歇尔太空天文台的远红外外差仪器(Herodynene Instrument for Far Infrared(HIFI))已获得了恒星形成区域的高分辨率宽带分子光谱,该光谱范围是从地面天文观测台几乎无法到达的波长范围。这些光谱调查为分子云的化学组成和物理性质提供了新的见解。在此手稿中,我们展示了人马座B2(N)分子云的HIFI光谱调查的初步结果,该调查包含在一系列物理环境中分配给至少40个不同分子的光谱特征。尽管由于该区域的化学复杂性而观察到了广泛的谱线融合,但由于在_1.2 THz的测量带宽中为每个物种检测到大量的跃迁,因此可以进行可靠的分子谱线识别,直至噪底。这样可以从林中提取新的弱排放物种。这些HIFI调查将是未来星际化学研究的宝贵档案资源。

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